Dergi makalesi Açık Erişim

Investigation of ruthenium-copper bimetallic catalysts for direct epoxidation of propylene: A DFT study

   Kizilkaya, Ali Can; Senkan, Selim; Onal, Isik

Propylene epoxidation reactions are carried out on Ru-Cu(1 1 1) and Cu(1 1 1) surfaces with periodic density functional theory (DFT) calculations. Ru-Cu(1 1 1) surface is modeled as Cu(1 1 1) monolayer totally covering the Ru(0 0 0 1) surface underneath, in accordance with the literature. It is shown that the Ru-Cu(1 1 1) surface is ineffective for propylene oxide formation since it has a lower energy barrier (0.48 eV) for the stripping of the allylic hydrogen of propylene and a higher energy barrier (0.92 eV) towards oxametallacycle formation compared to Cu(1 1 1) surface which has a barrier of 0.83 eV for hydrogen stripping and 0.75 eV for oxametallacycle formation. The reason behind this ineffectiveness is shown to be the higher basicity of the atomic oxygen adsorbed on Ru-Cu(111) compared to Cu(1 11), evaluated by the adsorption of sulfur dioxide onto the systems. The results are consistent both with recent publications about propylene epoxidation and previous studies performed about the structure of Ru-Cu catalysts. (C) 2010 Elsevier B.V. All rights reserved.

Dosyalar (211 Bytes)
Dosya adı Boyutu
bib-3c750def-e3d7-4c2e-8151-d2ec59fe659f.txt
md5:c14a5e50402231b44404284a8eaea0f2
211 Bytes İndir
82
10
görüntülenme
indirilme
Görüntülenme 82
İndirme 10
Veri hacmi 2.1 kB
Tekil görüntülenme 69
Tekil indirme 10

Alıntı yap